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Thermal, morphological and structural characterization of a copolymer of starch and polyethylene

机译:淀粉和聚乙烯共聚物的热,形态学和结构表征

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摘要

The objective of this paper was to perform a copolymerization between polyethylene and starch in order to obtain new environmentally friendly materials. The copolymer obtained was characterized thermally, morphologically and structurally, including its pasting profile. The starch-g-PE copolymer showed lower thermal stability compared to the control materials. FTIR analysis determined that the chemical bond signal between the starch and polyethylene in the copolymer overlaps with the native starch signals. The signal from this chemical bond was assigned by proton NMR spectroscopy at delta 4.45 ppm. X-ray studies of the copolymer showed a material with more amorphous characteristics compared to native starch. SEM analysis demonstrated the presence of cracks in the starch granules which favored the chemical interaction between the polymers. The pasting behavior of the copolymer was less pronounced compared to native starch. Therefore, the copolymerization of both polymers could be an alternative to recycle polyethylene and make biodegradable materials.
机译:本文的目的是在聚乙烯和淀粉之间进行共聚,以获得新的环保材料。得到的共聚物在于热,形态学和在结构上表征,包括其粘贴轮廓。与对照材料相比,淀粉-G-PE共聚物显示出较低的热稳定性。 FTIR分析确定淀粉和聚乙烯之间的化学键信号与天然淀粉信号重叠。来自该化学键的信号通过Proton NMR光谱在Delta 4.45ppm下分配。与天然淀粉相比,共聚物的X射线研究显示了具有更无定形特性的材料。 SEM分析证明了淀粉颗粒中的裂缝存在,这些淀粉颗粒有利于聚合物之间的化学相互作用。与天然淀粉相比,共聚物的粘贴行为不太明显。因此,两种聚合物的共聚可以是再循环聚乙烯的替代品,并制备可生物降解材料。

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